Preparation method of nickel cobalt oxide/nickel tungsten oxide/polyaniline three-element composite nanowire array electrode
A nanowire array, ternary composite technology, applied in the direction of hybrid capacitor electrodes, hybrid/electric double layer capacitor manufacturing, etc., can solve the problem of overall electrochemical performance decline, improve diffusion mass transfer performance, increase active surface The effect of improving utilization
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Embodiment 1
[0021] Accurately weigh 1mmol of nickel nitrate, 2mmol of cobalt nitrate and 8mmol of urea in 40mL of deionized water and stir until clarification, then transfer to a 50mL hydrothermal reaction kettle, and put a piece of treated foam nickel, seal and react at a constant temperature of 130°C 6h. After natural cooling, the nickel foam was taken out, washed three times alternately with absolute ethanol and deionized water, dried in vacuum at 60°C for 12 hours, and finally calcined at 350°C for 2 hours to obtain nickel cobaltate nanowire arrays.
[0022] Accurately weigh 1mmol of nickel nitrate, 1mmol of sodium tungstate and 6mmol of urea in 40mL of deionized water and stir until evenly mixed, then transfer the mixed solution into a 50mL polytetrafluoroethylene-lined stainless steel hydrothermal reaction kettle, and mix the previously obtained The nickel cobalt oxide nanowire array foam nickel substrate was placed in it, and after sealing, it was reacted at a constant temperature ...
Embodiment 2
[0026]Accurately weigh 1mmol of nickel nitrate, 2mmol of cobalt nitrate and 8mmol of urea in 40mL of deionized water and stir until clarification, then transfer to a 50mL hydrothermal reaction kettle, and put a piece of treated foam nickel, seal and react at a constant temperature of 110°C 4h. After natural cooling, the nickel foam was taken out, washed three times alternately with absolute ethanol and deionized water, dried in vacuum at 60°C for 12 hours, and finally calcined at 400°C for 2 hours to obtain nickel cobaltate nanowire arrays.
[0027] Accurately weigh 1mmol of nickel nitrate, 1mmol of sodium tungstate and 6mmol of urea in 40mL of deionized water and stir until evenly mixed, then transfer the mixed solution into a 50mL polytetrafluoroethylene-lined stainless steel hydrothermal reaction kettle, and mix the previously obtained The nickel cobalt oxide nanowire array foam nickel substrate was placed in it, and after sealing, it was reacted at a constant temperature o...
Embodiment 3
[0030] Accurately weigh 1mmol of nickel nitrate, 2mmol of cobalt nitrate and 8mmol of urea in 40mL of deionized water and stir until clarified, then transfer to a 50mL hydrothermal reaction kettle, and put a piece of treated foam nickel, seal and react at a constant temperature of 150°C 8h. After natural cooling, the nickel foam was taken out, washed three times alternately with absolute ethanol and deionized water, dried in vacuum at 60°C for 12 hours, and finally calcined at 350°C for 2 hours to obtain nickel cobaltate nanowire arrays.
[0031] Accurately weigh 1mmol of nickel nitrate, 1mmol of sodium tungstate and 6mmol of urea in 40mL of deionized water and stir until evenly mixed, then transfer the mixed solution into a 50mL polytetrafluoroethylene-lined stainless steel hydrothermal reaction kettle, and mix the previously obtained The nickel cobalt oxide nanowire array foam nickel substrate was placed in it, and after sealing, it was reacted at a constant temperature of 1...
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